首页|期刊导航|Journal of Magnesium and Alloys|Tb/Sm co-doping mediated luminescence regulation in Mg-based LiMgPO_(4)with insights from ab initio calculations and experimental investigation

Tb/Sm co-doping mediated luminescence regulation in Mg-based LiMgPO_(4)with insights from ab initio calculations and experimental investigationOA

中文摘要

This study systematically investigates the effects of Tb/Sm co-doping on the thermoluminescence(TL)and optically stimulated luminescence(OSL)properties of LiMgPO_(4):Tb,Sm,B through a combined approach of first-principles calculations and experimental validation.Theoretical computations reveal that the most stable doping configuration corresponds to Tb and Sm ions co-substituting at equivalent Mg sites,where mutual repulsive interactions lead to their spatial separation.Experimentally,samples with varying Tb/Sm concentrations were synthesized,and XRD results demonstrate no significant structural modifications upon doping,consistent with theoretical predictions.The TL glow curves exhibit first-order kinetics with characteristic peaks at 160°C and 280°C.The trap parameters including activation energy(E)and frequency factor(s)increase with rising dopant concentration,aligning with the localized behavior predicted by calculations,which arises from the repulsive interaction between Tb and Sm ions.The OSL performance reaches its optimum at 0.5 mol%Tb and 0.46 mol%Sm,beyond which concentration quenching occurs.This trend corroborates the theoretical mechanism wherein spatial separation at high dopant concentrations promotes energy migration,ultimately reducing luminescence efficiency.By integrating theoretical and experimental evidence,this work elucidates the microscopic mechanism through which dopant concentration regulates defect complex formation in Mg-based phosphors,providing a fundamental basis for designing high-performance radiation dosimeters.

Fu Li;Zungang Wang;Hui Cui;Haijun Fan;Siyuan Zhang;Mo Zhou;Kaiyong Tang

State Key Laboratory of Chemistry for NBC Hazards Protection,Beijing 102205,PR ChinaState Key Laboratory of Chemistry for NBC Hazards Protection,Beijing 102205,PR ChinaState Key Laboratory of Chemistry for NBC Hazards Protection,Beijing 102205,PR ChinaState Key Laboratory of Chemistry for NBC Hazards Protection,Beijing 102205,PR ChinaState Key Laboratory of Chemistry for NBC Hazards Protection,Beijing 102205,PR ChinaState Key Laboratory of Chemistry for NBC Hazards Protection,Beijing 102205,PR ChinaState Key Laboratory of Chemistry for NBC Hazards Protection,Beijing 102205,PR China

化学化工

ThermoluminescenceOptically stimulated luminescenceMg-based phosphorsRadiation dosimeter.

《Journal of Magnesium and Alloys》 2026 (6)

P.284-299,16

10.1016/j.jma.2026.102026

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